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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Computational fluid dynamics modelling of hydrocarbon fires in open environments: Literature review
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Computational fluid dynamics modelling of hydrocarbon fires in open environments: Literature review

机译:开放环境中碳氢化合物火灾的计算流体动力学建模:文献综述

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Hydrocarbon fuels are involved in most major fire accidents occurring in industrial facilities. Due to the need for an in-depth understanding of the phenomena associated with hydrocarbon fires, computational fluid dynamics (CFD) modelling has been widely employed in the field of fire risk analysis over the last decades. The aim of the present review is to provide the reader with a comprehensive compilation and discussion of the most important aspects involving CFD modelling to simulate hydrocarbon fires in open environments. The fire sizes simulated, the fuels used, the codes employed, the variables of interest measured, the simulation purposes and the results accuracy have been examined through a wide literature survey, which includes peer-reviewed journals and congress papers dating from the 90s until now.
机译:碳氢化合物燃料涉及产业设施中发生的大多数主要火灾事故。 由于需要深入了解与碳氢化合物火灾相关的现象,在过去几十年中,计算流体动力学(CFD)建模已广泛采用火灾风险分析领域。 本综述的目的是提供读者,综合汇编和讨论涉及CFD建模的最重要方面,以模拟开放环境中的碳氢化合物火灾。 模拟的火焰尺寸,使用的燃料,采用的代码,测量的感兴趣的变量,通过广泛的文学调查检查了仿真目的和结果准确性,包括同行评审期刊和国会文件,直到现在90年代 。

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